Oxidation Unzipping of Stable Nanographenes into Joint Spin-Rich Fragments

被引:41
作者
Gao, Xingfa [1 ]
Wang, Lu [1 ]
Ohtsuka, Yuhki [1 ]
Jiang, De-en [2 ]
Zhao, Yuliang [3 ,4 ]
Nagase, Shigeru [1 ]
Chen, Zhongfang [5 ]
机构
[1] Inst Mol Sci, Dept Theoret & Computat Mol Sci, Okazaki, Aichi 4448585, Japan
[2] Oak Ridge Natl Lab, Div Chem Sci, MS6201, Oak Ridge, TN 37931 USA
[3] Chinese Acad Sci, Inst High Energy Phys, Key Lab Biomed Effects Nanomat & Nanosafety, Beijing 100191, Peoples R China
[4] Natl Ctr Nanosci & Technol China, Beijing 100080, Peoples R China
[5] Univ Puerto Rico, Dept Chem, Inst Funct Nanomat, San Juan, PR 00931 USA
关键词
MOLECULAR-ORBITAL METHODS; GRAPHENE NANORIBBON; MAGNETIC-PROPERTIES; HALF-METALLICITY; BASIS-SETS; GRAPHITE; CARBON; FERROMAGNETISM; NANOFLAKES; EXCHANGE;
D O I
10.1021/ja902878w
中图分类号
O6 [化学];
学科分类号
0703 ;
摘要
When an all-benzenoid nanographene is linearly unzipped into oxygen-joined fragments, the oxidized benzenoid rings (aromatic sextets) selectively adopt the low-spin (Delta S = 0) or high-spin conformation (Delta S = 1) to yield the thermally most stable isomer. The selection of the conformation depends simply on the position of the aromatic sextets: the inner ones prefer the high-spin conformation, whereas the peripheral ones prefer the low-spin conformation. Therefore, the resulting most stable isomer has a total spin whose value equals the number of inner aromatic sextets (n(i)) along the oxidizing line. The nanographene fragments contained in this isomer have a ferromagnetic spin coupling. Due to the tautomerization between the high-spin and low-spin conformations, there also exist other possible isomers with higher energies and with spins at ground state ranging from 0 to (n(i) - 1). The rich geometrically correlated spins and the adjustable energy gaps indicate great potential of the graphene oxides in spintronic devices.
引用
收藏
页码:9663 / 9669
页数:7
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